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Crippling Load is the maximum load a structural member, such as a column or slender element, can carry before it experiences buckling or instability. Check FAQs
P=(σc-(n(λ)))Asectional
P - Crippling Load?σc - Compressive Stress?n - Straight Line Formula Constant?λ - Slenderness Ratio?Asectional - Column Cross Sectional Area?

Crippling Load on Column by Straight Line Formula given Slenderness Ratio Example

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With units
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Here is how the Crippling Load on Column by Straight Line Formula given Slenderness Ratio equation looks like with Values.

Here is how the Crippling Load on Column by Straight Line Formula given Slenderness Ratio equation looks like with Units.

Here is how the Crippling Load on Column by Straight Line Formula given Slenderness Ratio equation looks like.

3.955Edit=(0.0028Edit-(4Edit(0.5Edit)))1.4Edit
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Crippling Load on Column by Straight Line Formula given Slenderness Ratio Solution

Follow our step by step solution on how to calculate Crippling Load on Column by Straight Line Formula given Slenderness Ratio?

FIRST Step Consider the formula
P=(σc-(n(λ)))Asectional
Next Step Substitute values of Variables
P=(0.0028MPa-(4(0.5)))1.4
Next Step Convert Units
P=(2827Pa-(4(0.5)))1.4
Next Step Prepare to Evaluate
P=(2827-(4(0.5)))1.4
Next Step Evaluate
P=3955N
LAST Step Convert to Output's Unit
P=3.955kN

Crippling Load on Column by Straight Line Formula given Slenderness Ratio Formula Elements

Variables
Crippling Load
Crippling Load is the maximum load a structural member, such as a column or slender element, can carry before it experiences buckling or instability.
Symbol: P
Measurement: ForceUnit: kN
Note: Value should be greater than 0.
Compressive Stress
Compressive Stress is the internal resistance a material generates per unit area when subjected to a compressive force, which acts to reduce the volume or shorten the material.
Symbol: σc
Measurement: PressureUnit: MPa
Note: Value should be greater than 0.
Straight Line Formula Constant
Straight Line Formula Constant is defined as the constant that depends on the material of column.
Symbol: n
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Slenderness Ratio
Slenderness Ratio is the ratio of the length of a column and the least radius of gyration of its cross section.
Symbol: λ
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Column Cross Sectional Area
Column Cross Sectional Area is the area of a two-dimensional shape that is obtained when a three dimensional shape is sliced perpendicular to some specified axis at a point.
Symbol: Asectional
Measurement: AreaUnit:
Note: Value should be greater than 0.

Other Formulas to find Crippling Load

​Go Crippling Load on Column by Straight-Line Formula
P=(σc-(n(Leffrleast)))Asectional

Other formulas in Straight Line Formula category

​Go Compressive Yield Stress by Straight-Line Formula for Columns and Struts
σc=(PAsectional)+(n(Leffrleast))
​Go Cross-Sectional Area of Column by Straight-Line Formula for Columns and Struts
Asectional=Pσc-(n(Leffrleast))
​Go Constant Depending on Material of Column by Straight-Line Formula for Columns and Struts
n=σc-(PAsectional)(Leffrleast)
​Go Effective Length of Column by Straight Line Formula for Columns and Struts
Leff=σc-(PAsectional)n(1rleast)

How to Evaluate Crippling Load on Column by Straight Line Formula given Slenderness Ratio?

Crippling Load on Column by Straight Line Formula given Slenderness Ratio evaluator uses Crippling Load = (Compressive Stress-(Straight Line Formula Constant*(Slenderness Ratio)))*Column Cross Sectional Area to evaluate the Crippling Load, Crippling Load on Column by Straight Line Formula given Slenderness Ratio formula is defined as the maximum load that a column can withstand before it gets deformed or buckled under compressive stress, taking into account the slenderness ratio of the column, which is a critical factor in determining its stability. Crippling Load is denoted by P symbol.

How to evaluate Crippling Load on Column by Straight Line Formula given Slenderness Ratio using this online evaluator? To use this online evaluator for Crippling Load on Column by Straight Line Formula given Slenderness Ratio, enter Compressive Stress c), Straight Line Formula Constant (n), Slenderness Ratio (λ) & Column Cross Sectional Area (Asectional) and hit the calculate button.

FAQs on Crippling Load on Column by Straight Line Formula given Slenderness Ratio

What is the formula to find Crippling Load on Column by Straight Line Formula given Slenderness Ratio?
The formula of Crippling Load on Column by Straight Line Formula given Slenderness Ratio is expressed as Crippling Load = (Compressive Stress-(Straight Line Formula Constant*(Slenderness Ratio)))*Column Cross Sectional Area. Here is an example- 4.479997 = (2827-(4*(0.5)))*1.4.
How to calculate Crippling Load on Column by Straight Line Formula given Slenderness Ratio?
With Compressive Stress c), Straight Line Formula Constant (n), Slenderness Ratio (λ) & Column Cross Sectional Area (Asectional) we can find Crippling Load on Column by Straight Line Formula given Slenderness Ratio using the formula - Crippling Load = (Compressive Stress-(Straight Line Formula Constant*(Slenderness Ratio)))*Column Cross Sectional Area.
What are the other ways to Calculate Crippling Load?
Here are the different ways to Calculate Crippling Load-
  • Crippling Load=(Compressive Stress-(Straight Line Formula Constant*(Effective Column Length/Least Radius of Gyration)))*Column Cross Sectional AreaOpenImg
Can the Crippling Load on Column by Straight Line Formula given Slenderness Ratio be negative?
No, the Crippling Load on Column by Straight Line Formula given Slenderness Ratio, measured in Force cannot be negative.
Which unit is used to measure Crippling Load on Column by Straight Line Formula given Slenderness Ratio?
Crippling Load on Column by Straight Line Formula given Slenderness Ratio is usually measured using the Kilonewton[kN] for Force. Newton[kN], Exanewton[kN], Meganewton[kN] are the few other units in which Crippling Load on Column by Straight Line Formula given Slenderness Ratio can be measured.
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